Wind energy has significant potential in India due to its geography and wind resources. India has an installed wind energy capacity of over 21 GW as of 2014 and aims to add 11 GW of new wind capacity by 2017. Wind energy provides environmental and economic benefits by reducing emissions and creating jobs. Key wind energy producing states are Tamil Nadu, Gujarat, Maharashtra, Rajasthan, and Karnataka. The wind energy sector in India is expected to continue growing significantly in the coming years.
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The mammoth energy requirements of India coupled with the strong push being provided by the government to renewable sources of energy makes this sector a lucrative business prospect. This presentation details the overview of the renewable energy sector in India as well as Gujarat and highlights the business opportunities available within the sector.
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The mammoth energy requirements of India coupled with the strong push being provided by the government to renewable sources of energy makes this sector a lucrative business prospect. This presentation details the overview of the renewable energy sector in India as well as Gujarat and highlights the business opportunities available within the sector.
Energy cost and energy shortage in nepal potential of solar, wind and other f...SINGHZEE
This is a brief discussion on the energy cost and energy shortage situation in Nepal as well as the potential of Solar, wind and other future energy in Nepal
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Energy cost and energy shortage in nepal potential of solar, wind and other f...SINGHZEE
This is a brief discussion on the energy cost and energy shortage situation in Nepal as well as the potential of Solar, wind and other future energy in Nepal
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The presentation is mostly focused on the Renewable Energy and there Prospects in India. In the presentation there is important points for the World's Renewable Energy and also for the India's Renewable Energy.
Integrating wind and solar energy in india for a smart grid platformFarhan Beg
This paper proposes that integration of enhanced electrical capacity realized through a large-scale integration of renewable energy resources, such as wind and solar energy, in the Indian electrical grid can lead to a smarter grid platform. This platform will ensure increased efficiency, reliability, and security, as well as reducing the environmental impact of supplying the electrical power needs of the modern society. The result is an enhanced electricity management environment and a dynamic programable renewable source mobilization in India leading to energy independence and an electrical grid that is much more reliable, secure, efficient, and greener.
A new global energy landscape is emerging, resetting long-held expectations for our energy future. Bringing together the latest data and policy developments, the World Energy Outlook 2013 presents up to date, projections of energy trends through to 2035, fuel by fuel, sector by sector, region by region and scenario by scenario. Oil is analysed in-depth: resources, production, demand, refining and international trade. Energy efficiency is treated in much the same way as conventional fuels: Its prospects and contribution are presented in a dedicated chapter. The report examines the outlook for Brazil's energy sector and provides updates on three key areas of critical importance to energy and climate trends: (i) achieving universal energy access; (ii) developments in subsidies to fossil fuels and renewables; and (iii) the impact of energy use on climate change. Oil supply, demand and trade: a fresh look at the economics and decline rates of different types of oil production around the world, the prospects for light tight oil inside and outside North America, along with new analysis of oil products and the refining sector. By Fatih Birol, Chief Economist, International Energy Agency
Market Research Report : Wind turbine market in india 2013Netscribes, Inc.
For the complete report, get in touch with us at : info@netscribes.com
India is a major player in the global wind turbine market. In terms of wind power installed capacity, India is ranked 5th in the world.
The report begins with an overview of the macroeconomic scenario prevalent in India currently. The introduction section which follows gives an overview of the total power scenario in India along with the share of renewable energy in the overall power capacity. It also highlights the generation procedure and the cost component of wind power. Components of a wind turbine along with the various technological options are also tabulated. The market overview section provides an insight into the wind turbine market which includes the historical and forecasted growth and size of wind turbine installations inIndia. Market segmentation in terms of geared and gearless turbines and ownership of installation are revealed here. Cost component difference in geared and gearless turbines is also highlighted along with the difference in the two prevailing business models in the wind energy sector. Export and Import figures for wind mills & turbines are shown for the last four fiscal years.
An analysis of the drivers explains the factors for growth of the industry which includes the huge untapped wind power potential in the country, energy deficiency condition inIndia, global drive towards clean energy, volatile global prices of oil and depleting coal reserves. However few challenges plague the wind turbine manufacturing sector inIndiawhich includes withdrawal of GBI and AD schemes, rise in prices of important raw materials like steel and copper and land acquisition problems.
The biomass market suffered during the economic downturn in the face of low coal prices, logistic barriers and supply issues. 2010 saw more movement in the sector as coal prices are beginning to rise once again making co-firing coal plants with biomass more attractive. Furthermore, the biomass component of a coal-fired plant may be eligible for feed-in tariff or count towards renewable portfolio standards.Most of these plants rely on wood pellets, often transported at great distance, rather than wood chips or other less dense biomass sources. In the wood pellets market, supplies from the US and Canada are cheaper than their European counterparts and thus North America is a major suppli- ers for European biomass plants. CIS countries, Russia, Australia and South Africa have entered as significant suppliers, which if they could ramp up supply, could be serious competitors to the US and Canada. Or in the case of Russia, resolve supply delay issues, could be one of the biggest players in the market.
Study of Renewable Energy Sources in India - A ReviewIRJEETJournal
Energy is at the heart of most critical economic, environmental and developmental issues facing the world today. Clean, efficient, affordable and reliable energy services are indispensable for global prosperity. India with a population of 1.2 billion people, is one of the largest and fastest growing economies in the world. There is always a very strong demand for energy, which currently comes mainly from coal, oil and other sources which are non-renewable. Also, the consumption of these energies is harmful for the environment.
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Sustainable energy in India: A Paradigm ShiftAdarsh Tripathi
This presentation briefly introduces with the current scenario of Sustainable & Renewable Energy in India. It also includes various government policies & various case studies from the very remote villages & locations of India.
USING GIS AND REMOTE SENSING TECHNIQUES FOR SOLAR HOTSPOTS INSTALLATION IN TH...meijjournal
Solar energy has been widely tapped around the world replacing conventional non-renewable energy. Currently, one of the most challenging problems is to increase the quantity of energy tagged from solar energy. Before installing solar panels, assessing where solar panels should be placed can significantly benefit panel performance. This study aims to conduct a site selection analysis for solar panel installation using Geographical Information Systems (GIS). The focus of the analysis is on building rooftop PVC panel installation. In this study, Google Earth images were used to digitize the rooftop that is potential for solar PVC panel and derive the areas using ArcGIS software.
USING GIS AND REMOTE SENSING TECHNIQUES FOR SOLAR HOTSPOTS INSTALLATION IN TH...meijjournal
Solar energy has been widely tapped around the world replacing conventional non-renewable energy.
Currently, one of the most challenging problems is to increase the quantity of energy tagged from solar
energy. Before installing solar panels, assessing where solar panels should be placed can significantly
benefit panel performance. This study aims to conduct a site selection analysis for solar panel installation
using Geographical Information Systems (GIS). The focus of the analysis is on building rooftop PVC panel
installation.
USING GIS AND REMOTE SENSING TECHNIQUES FOR SOLAR HOTSPOTS INSTALLATION IN TH...meijjournal
Solar energy has been widely tapped around the world replacing conventional non-renewable energy.
Currently, one of the most challenging problems is to increase the quantity of energy tagged from solar energy. Before installing solar panels, assessing where solar panels should be placed can significantly benefit panel performance. This study aims to conduct a site selection analysis for solar panel installation using Geographical Information Systems (GIS). The focus of the analysis is on building rooftop PVC panel installation. In this study, Google Earth images were used to digitize the rooftop that is potential for solar PVC panel and derive the areas using ArcGIS software.
Review Paper of Savonius Vertical Axis Wind Turbine Rotor BladeIJMER
This paper involves study of Savonius Vertical Axis Wind Turbine (SVAWT) blades. In
past few years more research works are carried out to increase efficiency of Vertical Axis Wind
Turbine. Review of all these papers shows that the experiments are conducted only on semi
cylindrical bucket shape blades, twisted blades, blades with end flap edges and blades having frames
with cavity vanes, for two blades, three blades and four bladed Savonius Vertical Axis Wind
Turbine(SVAWT) to increase performance. They also conducted experiments by providing curtains or
flow guide to the rotor, increasing in the stages of rotor and combining both Savonius and Darrieus
rotor (i.e. hybrid rotors) to increase the efficiency of rotor. Research work or experiments on semi
cylindrical bucket rotor blade edges, having extrusion or leading edges with different angles are not
carried out. Development of these designs includes a multidisciplinary design optimization approach
for optimizing the Vertical Axis Wind Turbine blade, considering both structural and fluid flow
performance requirements. Weighted Property Method, Cost Property Method, limits Property
Methods are used for Selection of suitable material. ANSYS and Computational Fluid Dynamics are
used for structural analysis and fluid flow performance of newly designed blade.
The consideration of getting green energy or clean energy upheaval is gaining more amazing headway than expected. Solar and wind power have seen outstanding expense declines, and EVs or electric vehicles are surprising the market.
While there is a slight degree of hybrid between clean energy and environmentally friendly power energy, they are not actually something similar. Clean energy is the energy gotten from inexhaustible, zero-emanation sources that don’t dirty the climate as well as save energy by energy proficiency measures.
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tides, and geothermal heat, which are renewable (naturally replenished). Even for the decentralized systems, the
growth for solar home lighting systems has been 300%, solar lanterns 99% and solar photovoltaic water pumps
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to be supplied only through major electricity utilities. Some large projects have been proposed, and a 35,000
km2 area of the Thar Desert has been set aside for solar power projects, sufficient to generate 700 to 2,100 giga
watts. Renewable energy systems are also being looked upon as a major application for electrification of 20,000
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"Understanding the Carbon Cycle: Processes, Human Impacts, and Strategies for...MMariSelvam4
The carbon cycle is a critical component of Earth's environmental system, governing the movement and transformation of carbon through various reservoirs, including the atmosphere, oceans, soil, and living organisms. This complex cycle involves several key processes such as photosynthesis, respiration, decomposition, and carbon sequestration, each contributing to the regulation of carbon levels on the planet.
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Micro RNA genes and their likely influence in rice (Oryza sativa L.) dynamic ...Open Access Research Paper
Micro RNAs (miRNAs) are small non-coding RNAs molecules having approximately 18-25 nucleotides, they are present in both plants and animals genomes. MiRNAs have diverse spatial expression patterns and regulate various developmental metabolisms, stress responses and other physiological processes. The dynamic gene expression playing major roles in phenotypic differences in organisms are believed to be controlled by miRNAs. Mutations in regions of regulatory factors, such as miRNA genes or transcription factors (TF) necessitated by dynamic environmental factors or pathogen infections, have tremendous effects on structure and expression of genes. The resultant novel gene products presents potential explanations for constant evolving desirable traits that have long been bred using conventional means, biotechnology or genetic engineering. Rice grain quality, yield, disease tolerance, climate-resilience and palatability properties are not exceptional to miRN Asmutations effects. There are new insights courtesy of high-throughput sequencing and improved proteomic techniques that organisms’ complexity and adaptations are highly contributed by miRNAs containing regulatory networks. This article aims to expound on how rice miRNAs could be driving evolution of traits and highlight the latest miRNA research progress. Moreover, the review accentuates miRNAs grey areas to be addressed and gives recommendations for further studies.
Diabetes is a rapidly and serious health problem in Pakistan. This chronic condition is associated with serious long-term complications, including higher risk of heart disease and stroke. Aggressive treatment of hypertension and hyperlipideamia can result in a substantial reduction in cardiovascular events in patients with diabetes 1. Consequently pharmacist-led diabetes cardiovascular risk (DCVR) clinics have been established in both primary and secondary care sites in NHS Lothian during the past five years. An audit of the pharmaceutical care delivery at the clinics was conducted in order to evaluate practice and to standardize the pharmacists’ documentation of outcomes. Pharmaceutical care issues (PCI) and patient details were collected both prospectively and retrospectively from three DCVR clinics. The PCI`s were categorized according to a triangularised system consisting of multiple categories. These were ‘checks’, ‘changes’ (‘change in drug therapy process’ and ‘change in drug therapy’), ‘drug therapy problems’ and ‘quality assurance descriptors’ (‘timer perspective’ and ‘degree of change’). A verified medication assessment tool (MAT) for patients with chronic cardiovascular disease was applied to the patients from one of the clinics. The tool was used to quantify PCI`s and pharmacist actions that were centered on implementing or enforcing clinical guideline standards. A database was developed to be used as an assessment tool and to standardize the documentation of achievement of outcomes. Feedback on the audit of the pharmaceutical care delivery and the database was received from the DCVR clinic pharmacist at a focus group meeting.
Artificial Reefs by Kuddle Life Foundation - May 2024punit537210
Situated in Pondicherry, India, Kuddle Life Foundation is a charitable, non-profit and non-governmental organization (NGO) dedicated to improving the living standards of coastal communities and simultaneously placing a strong emphasis on the protection of marine ecosystems.
One of the key areas we work in is Artificial Reefs. This presentation captures our journey so far and our learnings. We hope you get as excited about marine conservation and artificial reefs as we are.
Please visit our website: https://kuddlelife.org
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Characterization and the Kinetics of drying at the drying oven and with micro...Open Access Research Paper
The objective of this work is to contribute to valorization de Nephelium lappaceum by the characterization of kinetics of drying of seeds of Nephelium lappaceum. The seeds were dehydrated until a constant mass respectively in a drying oven and a microwawe oven. The temperatures and the powers of drying are respectively: 50, 60 and 70°C and 140, 280 and 420 W. The results show that the curves of drying of seeds of Nephelium lappaceum do not present a phase of constant kinetics. The coefficients of diffusion vary between 2.09.10-8 to 2.98. 10-8m-2/s in the interval of 50°C at 70°C and between 4.83×10-07 at 9.04×10-07 m-8/s for the powers going of 140 W with 420 W the relation between Arrhenius and a value of energy of activation of 16.49 kJ. mol-1 expressed the effect of the temperature on effective diffusivity.
Alert-driven Community-based Forest monitoring: A case of the Peruvian Amazon
Wind Energy in Context of India
1. `
BPLN0507 - Sustainable Urban Development
Wind Energy in Context of India
Assignment Report
BHUPENDRA PRATAP SINGH (2013BPLN010)
9/7/2015
2. Wind Energy in Context of India
BPLN0507 - Sustainable Urban Development | Bhupendra Pratap Singh (2013BPLN010) 2
Introduction
Winds are caused by the uneven heating of the atmosphere by the sun, the irregularities of the earth's
surface, and rotation of the earth. The earth’s surface is made of different types of land and water. These
surfaces absorb the sun’s heat at different rates, giving rise to the differences in temperature and
subsequently to winds. During the day, the air above the land heats up more quickly than the air over
water. The warm air over the land expands and rises, and the heavier, cooler air rushes in to take its
place, creating winds. At night, the winds are reversed because the air cools more rapidly over land than
over water. In the same way, the large atmospheric winds that circle the earth are created because the
land near the earth's equator is heated more by the sun than the land near the North and South
Poles. Humans use this wind flow for many purposes: sailing boats, pumping water, grinding mills and
also generating electricity. Wind turbines convert the kinetic energy of the moving wind into electricity.
Global Growth of Wind Energy
The wind is one of the cleanest sources of energy, and because it is a naturally generated resource, it
is also the most abundant energy source on the planet today. Wind power is energy that is created
through the conversion of wind into forms that are more practically useful, such as electricity. Wind
energy is currently supplying as much as 1% of the world’s electricity use , however the power of wind
energy could potentially supply as much as 20% of global electricity. Wind energy is the most easily
accessed form of energy today, and it is also the cleanest which makes it an affordable and the most
feasible option towards making our earth a greener place.
3. Wind Energy in Context of India
BPLN0507 - Sustainable Urban Development | Bhupendra Pratap Singh (2013BPLN010) 3
2014 was a record year for the wind industry as annual installations crossed the 50 GW marks for the
first time. More than 51 GW of new wind power capacity was brought on line, a sharp rise in
comparison to 2013, when global installations were just over 35.6 GW. The previous record was set in
2012 when over 45 GW of new capacity was installed globally.
Indian Wind Energy
In the early 1980’s, the Department of Non-conventional Energy Sources (DNES) came into existence
with the aim to reduce the dependence of primary energy sources like coal, oil etc in view of the
Country’s energy security. The DNES became Ministry of Non-conventional Energy Sources (MNES) in
the year 1992 and now from 2006, the Ministry was renamed as Ministry of New & Renewable Energy
(MNRE).
The growth of Renewable Energy in India is enormous and Wind Energy proves to be the most effective
solution to the problem of depleting fossil fuels, importing of coal, greenhouse gas emission,
environmental pollution etc. Wind energy as a renewable, non-polluting and affordable source directly
avoids dependency of fuel and transport, can lead to green and clean electricity.
With an installed capacity of 21136.3 MW (March 2014) of wind energy, Renewable Energy Sources
(excluding large Hydro) currently accounts for 13.86 % of India’s overall installed power capacity of
228721.73 MW. Wind Energy holds the major portion of 66.7 % (of 31707.2 GW total RE capacity)
among renewable and continued as the largest supplier of clean energy.
4. Wind Energy in Context of India
BPLN0507 - Sustainable Urban Development | Bhupendra Pratap Singh (2013BPLN010) 4
In its 12th Five Year Plan (2012-2017), the Indian Government has set a target of adding 18.5 GW of
renewable energy sources to the generation mix out of which 11 GW is the Wind estimation and rest
from renewable sources like Solar 4 GW and others 3.5 GW.
(Source:Reportof the WorkingGroup on PowerforTwelfthPlan2012-17, Govt.of India,Ministryof Power)
Fuel Megawatt % Average
Total Thermal 1,91,664 69.5
Coal 167,708 60.8
Gas 22,962 8.3
Oil 994 0.4
Hydro (Renewable) 41,997 15.2
NuclearPower 5,780 2.1
Renewable EnergySources 36,471 13.2
Total 2,75,912
5. Wind Energy in Context of India
BPLN0507 - Sustainable Urban Development | Bhupendra Pratap Singh (2013BPLN010) 5
Geographic Locationand Wind Potential
The potential is far from exhausted. It is estimated that with the current level of technology, the ‘on-
shore’ potential for utilization of wind energy for electricity generation is of the order of 65,000 MW.
India also is blessed with 7517km of coastline and its territorial waters extend up to 12 nautical miles
into the sea. The unexploited resource availability has the potential to sustain the growth of wind
energy sector in India in the years to come.
6. Wind Energy in Context of India
BPLN0507 - Sustainable Urban Development | Bhupendra Pratap Singh (2013BPLN010) 6
Wind energy as job generator
Wind energy utilization creates many more jobs than centralized, non-renewable energy sources. Wind
Energy companies have opened up huge career options. Also the ease and accessibility of
manufacturing technology has given entrepreneurs with new business options to venture in. The wind
sector worldwide has become a major job generator: Within only three years, the wind sector
worldwide almost doubled the number of jobs from 235,000 in 2005 to 440,000 in the year 2008.
These highly skilled employees are contributing to the generation of 260 TWh of electricity.
India in the windy world
In 2008, India shared 6.58% of total wind energy installed capacity around the world, according to
World Wind Energy Report-2008. According to GSR-2011, the world witnessed highest renewable
energy installations through wind energy. Total installed capacity of wind energy reached 198GW by
the end of 2010. India ranked third in the world in annual capacity additions and fifth in terms of total
wind energy installed capacity. India has been able to fast pace its growth in wind energy installations
and bring down costs of power production.
Positive Aspects ofWind Energy
Wind energy produces no greenhouse gases.
Wind power plants can make a significant contribution to the regional electricity supply and to
power supply diversification.
A very short lead time for planning and construction is required as compared to conventional
power projects.
Wind energy projects are flexible with regard to an increasing energy demand - single turbines
can easily be added to an existing park.
Finally, wind energy projects can make use of local resources in terms of labour, capital and
materials.
Can be used for both distributed generation or grid interactive power generation using on-shore
or off shore technologies.
Ranges of power producing turbines are available. Micro-turbines are capable of producing
300W to 1MW and large wind turbines have typical size of 35kW-3MW.
7. Wind Energy in Context of India
BPLN0507 - Sustainable Urban Development | Bhupendra Pratap Singh (2013BPLN010) 7
Wind turbine is suitable to install in remote rural area, water pumping and grinding mills etc.
Disadvantages
The total cost can be cheaper than solar system but more expensive than hydro.
Electricity production depends on- wind speed, location, season and air temperature. Hence
various monitoring systems are needed and may cost expensive.
High percentage of the hardware cost (for large WT) is mostly spent on the tower designed to
support the turbine.
State Wise InstalledWind Capacity
A notable feature of the Indian program has been the interest among private investors/developers in
setting up of commercial wind power projects. Several companies have established themselves in wind
technology manufacturing. The gross potential is 48,561 MW (source C-wet) and a total of
about 14,158.00 MW of commercial projects have been established until March 31, 2011. All projects
installed in India are listed on this page. The break-up of projects implemented in prominent wind
potential states (as on March 31, 2011) is as given below:
State
Gross Potential
(MW)
Total Capacity (MW) till
31.03.2011
Andhra Pradesh 8968 200.2
Gujarat 10,645 2175.6
Karnataka 11,531 1730.1
Kerala 1171 32.8
Madhya
Pradesh
1019 275.5
Maharashtra 4584 2310.7
Orissa 255 -
Rajasthan 4858 1524.7
Tamil Nadu 5530 5904.4
Others - 4
Total 48,561 14,158
8. Wind Energy in Context of India
BPLN0507 - Sustainable Urban Development | Bhupendra Pratap Singh (2013BPLN010) 8
Future Wind Power Plants in India
102.4 MW Sipla Wind Farm will be located at Jaisalmer District (Rajasthan) CLP
50.4 MW Narmada Wind Farm at Nallakonda (Andhra Pradesh),CLP
200 MW Wind Farm in Tamil Nadu by Techno Electric & Engineering Company Ltd (TEECL)
Caparo is builing 500 MW Wind Farms in Rajasthan, Gujarat and Maharashtra, has placed a $1.2 billion
order with Suzlon.
56-megawatt Tuppadahalli wind farm by Acc India.
50MW wind farm Amreli district of Gujarat by Orient Green Power Company.
84 MW Wind Farm in Maharashtra by Orient Green Power Company.
33 MW wind farm Vellappaneri Wind Farm by Beta Wind Farm which is a 100 per cent subsidiary
Orient Green Power.
Conclusion
For making a sustainable India Wind energy can play a important role as India having geographical
condition which are favorable for implementing wind turbine, Also this sector provides a lots of jobs so
it also provide employment. It provides better replacements for the non-renewable source of energy.
Government also encouraging private sector to invest in this field so it also provide economic growth
of the country as well as increasing the GDP of country.
References
http://www.indianwindpower.com
http://www.ge.com/in/wind-energy/wind-turbines-in-india
http://www.inwea.org/aboutwindenergy.htm
http://www.gwec.net
http://powermin.nic.in/power-sector-glance-all-india